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首页> 外文期刊>Journal of Biomolecular Structure and Dynamics >Molecular dynamics simulation of biased agonists at the dopamine D2 receptor suggests the mechanism of receptor functional selectivity
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Molecular dynamics simulation of biased agonists at the dopamine D2 receptor suggests the mechanism of receptor functional selectivity

机译:多巴胺D2受体偏置激动剂的分子动力学模拟表明受体功能选择性的机制

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摘要

The dopamine D2 receptor (D2R) is the primary target for antipsychotic drugs. Besides schizophrenia, this receptor is linked to dementia, Parkinson's disease, and depression. Recent studies have shown that beta-arrestin biased agonists at this receptor treat schizophrenia with less side effects. Although the high resolution structure of this receptor exists, the mechanism of biased agonism at the receptor is unknown. In this study, dopamine, the endogenous unbiased G-protein agonist, MLS1547, a G-protein biased agonist, and UNC9975, a G-protein antagonist and a beta-arrestin biased agonist, were docked to a homology model of the whole D2R including all flexible loops, and molecular dynamics simulations were conducted to study the potential mechanisms of biased agonism. Our thorough analysis on the protein-ligand interaction, secondary structure, tertiary structure, structure dynamics, and molecular switches of all three systems indicates that ligand binding to transmembrane 3 might be essential for G-protein recruitment, while ligand binding to transmembrane 6 might be essential for beta-arrestin recruitment. Our analysis also suggests changes in both the secondary and the tertiary structures of TM5 and TM7, molecular switches and ICL3 flexibility are important in biased signaling.
机译:多巴胺D2受体(D2R)是抗精神病药物的主要靶标。除了精神分裂症外,该受体与痴呆症,帕金森病和抑郁症有关。最近的研究表明,在该受体的β-捕获偏向的激动剂治疗精神分裂症,副作用较少。尽管存在该受体的高分辨率结构,但受体偏置激动的机理是未知的。在该研究中,多巴胺,内源性非偏见的G-蛋白激动剂,MLS1547,G蛋白偏向的激动剂和UNC9975,G-蛋白拮抗剂和β-雷氏酶偏向的激动剂被停靠在全部D2R的同源模型中,包括进行了所有灵活的环,以及分子动力学模拟,以研究偏置激动主义的潜在机制。我们对所有三种系统的蛋白质 - 配体相互作用,二次结构,三级结构,结构动力学和分子开关的彻底分析表明与跨膜3的配体结合可能对G蛋白募集是必不可少的,而与跨膜6的配体结合可能是必不可少的对Beta-Artern招聘是必不可少的。我们的分析还表明TM5和TM7的二级和三级结构的变化,分子开关和ICL3灵活性在偏置信号中都很重要。

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